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离子通过重组谷氨酸受体通道流动的结构决定因素。

Structural determinants of ion flow through recombinant glutamate receptor channels.

作者信息

Verdoorn T A, Burnashev N, Monyer H, Seeburg P H, Sakmann B

机构信息

Max-Planck-Institut für medizinische Forschung, Abteilung Zellphysiologie, Heidelberg, Federal Republic of Germany.

出版信息

Science. 1991 Jun 21;252(5013):1715-8. doi: 10.1126/science.1710829.

Abstract

Functional glutamate receptor (GluRs) were transiently expressed in cultured mammalian cells from cloned complementary DNAs encoding GluR-A, -B, -C, or -D polypeptides. The steady-state current-voltage (I-V) relations of glutamate- and kainate-induced currents through homomeric channels fell into two classes: channels composed of either the GluR-A, -C, and -D subunits showed doubly rectifying I-V curves, and channels composed of the GluR-B subunits displayed simple outward rectification. The presence of GluR-B subunits in heteromeric GluRs determined the I-V behavior of the resulting channels. Site-directed mutagenesis identified a single amino acid difference (glutamine to arginine) in the putative transmembrane segment TM2 responsible for subunit-specific I-V relationships. The properties of heteromeric wild-type and mutant GluRs revealed that the dominance of GluR-B is due to the arginine residue in the TM2 region.

摘要

功能性谷氨酸受体(GluRs)通过编码GluR - A、- B、- C或 - D多肽的克隆互补DNA在培养的哺乳动物细胞中瞬时表达。通过同聚体通道的谷氨酸和海人酸诱导电流的稳态电流 - 电压(I - V)关系分为两类:由GluR - A、- C和 - D亚基组成的通道显示出双整流I - V曲线,而由GluR - B亚基组成的通道表现出简单的外向整流。异聚体GluRs中GluR - B亚基的存在决定了所得通道的I - V行为。定点诱变在假定的跨膜片段TM2中确定了一个单一氨基酸差异(谷氨酰胺变为精氨酸),该差异负责亚基特异性I - V关系。异聚体野生型和突变型GluRs的特性表明,GluR - B的优势归因于TM2区域中的精氨酸残基。

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